FAN4113IP5X FAIRCHILD [Fairchild Semiconductor], FAN4113IP5X Datasheet

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FAN4113IP5X

Manufacturer Part Number
FAN4113IP5X
Description
1.2V, 36MHz, Low Power Rail-to-Rail Amplifier
Manufacturer
FAIRCHILD [Fairchild Semiconductor]
Datasheet
FAN4113
1.2V, 36MHz, Low Power Rail-to-Rail Amplifier
Features at +1.2V
• 640µA supply current per amplifier
• 36MHz gain bandwidth product
• Output voltage range: 0.06V to 1.10V
• Input voltage range: -0.4V to +0.2V
• 8V/µs slew rate
• 12nV/√Hz input voltage noise
• Package option (SC70-5)
• Fully specified at +1.2V, +2.7V, and +5V supplies
Applications
• Cellular phones
• Personal data assistants
• A/D buffer
• DSP interface
• Smart card readers
• Portable test instruments
• Single cell NiCd/Ni MH powered systems
• Keyless entry
• Infrared receivers for remote controls
• Telephone systems
• Audio applications
Typical Application
+In
R
g
+
FAN4113
-
+V
s
0.01µF
6.8µF
+
R
f
Out
Description
The FAN4113 is a low cost, voltage feedback amplifier that
consumes only 640µA of supply current. The FAN4113 is
designed to operate from +1.2V to 5.5V (±2.75V) supplies.
The common mode voltage range extends below the negative
rail and the output provides rail-to-rail performance.
The FAN4113 is designed on a complementary bipolar
process and provides 36MHz of bandwidth and 8V/µs of slew
rate at a low supply voltage of 1.2V. The combination of low
power, rail-to-rail performance, low voltage operation, and
tiny package options make the FAN4113 well suited for use
in personal electronics equipment such as cellular handsets,
pagers, PDAs, and other battery powered applications.
Pin Assignments
0.01
Non-Inverting Freq. Response, V
V
o
= 50mV
Out
-V
+In
s
0.1
pp
Frequency (MHz)
1
2
3
G = 10
G = 5
1
G = 1
-
10
5
4
www.fairchildsemi.com
s
G = 2
= 1.2V
+V
-In
REV. 1 October 2001
100
s

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FAN4113IP5X Summary of contents

Page 1

FAN4113 1.2V, 36MHz, Low Power Rail-to-Rail Amplifier Features at +1.2V • 640µA supply current per amplifier • 36MHz gain bandwidth product • Output voltage range: 0.06V to 1.10V • Input voltage range: -0.4V to +0.2V • 8V/µs slew rate • ...

Page 2

DATA SHEET Absolute Maximum Ratings Parameter Supply Voltages Maximum Junction Temperature Storage Temperature Range Lead Temperature, 10 seconds Operating Temperature Range, recommended Input Voltage Range θ ja for 5 load SC70 Electrical Specifications (T = 25° +1.2V, G ...

Page 3

FAN4113 Electrical Specifications (T = 25° +2.7V 5kΩ Parameter AC Performance 1 -3dB Bandwidth Full Power Bandwidth Gain Bandwidth Product Rise and Fall Time Settling Time to 1% ...

Page 4

DATA SHEET Electrical Specifications (T = 25° +5V 5kΩ Parameter AC Performance 1 -3dB Bandwidth Full Power Bandwidth Gain Bandwidth Product Rise and Fall Time Settling Time to ...

Page 5

FAN4113 Typical Operating Characteristics (T = 25° +2.7V 5kΩ Non-Inverting Frequency Response V = 50mV 0.01 0.1 1 Frequency (MHz) ...

Page 6

DATA SHEET Typical Operating Characteristics (T = 25° +2.7V 5kΩ Harmonic Distortion vs. Freq 500mV o pp -65 -70 2nd -75 ...

Page 7

FAN4113 Application Information General Description The FAN4113 is single supply, general purpose, voltage-feedback amplifier. The FAN4113 is fabricated on a complimentary bipolar process, features a rail-to-rail output, and is unity gain stable. The typical non-inverting circuit schematic is shown in ...

Page 8

DATA SHEET Layout Considerations General layout and supply bypassing play major roles in high frequency performance. Fairchild has evaluation boards to use as a guide for high frequency layout and as aid in device testing and characterization. Follow the steps ...

Page 9

FAN4113 FAN4113 Evaluation Board Layout Figure 6a: KEB011 (top side) FAN4113 Package Dimensions b SC70 REV. 1 October 2001 NOTE: 1. All dimensions ...

Page 10

... Package FAN4113 FAN4113IP5 SC70-5 FAN4113 FAN4113IP5X SC70-5 Temperature range for all parts: -40°C to +85°C. DISCLAIMER FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICES TO ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY, FUNCTION OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS ...

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